Low-loss cable laying tool

This low-loss cable laying tool, which uses a built-in motor to drive the sliding column and crosshead to rotate, solves the cable wear problem caused by traditional tools, achieves efficient and damage-free cable fixing, and extends the cable's service life.

CN224053750UActive Publication Date: 2026-03-27SHANGHAI HONGYAN ENGINEERING CONSTRUCTION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional cable laying tools can easily cause wear and tear on the cable sheath and damage to the internal structure during fixing, increasing transmission loss and shortening the cable's service life.

Method used

A low-loss cable laying tool is used, which drives a rectangular sleeve to rotate a sliding column and a cross-shaped cutter head through a built-in motor. The return force of the compression spring causes the cross-shaped cutter head to abut against the screw and drive it to rotate. Combined with the magnetic attraction of the electromagnet block, tool-free manual installation is achieved, and the cable is fixed by a lateral clip.

Benefits of technology

It achieves efficient and non-destructive cable positioning and fixing, improves work efficiency, avoids cable wear, and extends cable service life.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224053750U_ABST
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Abstract

The utility model relates to the technical field of cable laying tools, in particular to a low-loss cable laying tool which comprises a laying box used for low-loss cable laying, a battery bin is installed on the left side of the laying box, a charging port is formed in the lower side of the battery bin, a second installation cavity is formed in the inner side of the laying box, and a laying assembly is installed on the inner side of the second installation cavity. The laying assembly comprises a built-in motor, a rectangular sleeve is fixedly installed at the output end of the built-in motor, a sliding column is slidably installed on the inner side of the rectangular sleeve, a compression spring is fixedly installed at the bottom of the sliding column, an electromagnet is fixedly installed at the bottom of the compression spring, the electromagnet is fixedly installed on the inner side of the rectangular sleeve, and the electromagnet is sleeved with an insulating layer. According to the utility model, through the arrangement of the laying assembly, the whole process is electrically driven, manual installation work can be carried out without the help of tools, the working efficiency is high, and a lateral buckle fixing mode is adopted, so that the whole work does not cause damage to the cable.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable laying tool technical field especially relates to a low loss cable laying tool. BACKGROUND

[0002] Low loss cable refers to in the cable transmission process, can effectively reduce signal attenuation, energy loss and electromagnetic interference and other loss phenomenon's cable.

[0003] In the cable laying engineering, the traditional laying tool needs to be fixed with the aid of the tool when fixing, and the problems such as the friction of cable is large, positioning is not accurate and the like are prone to occur when fixing, leading to the wear of cable sheath, internal structure damage, and further increase the transmission loss of cable, shorten its service life.

[0004] To solve the above problems, we propose a low loss cable laying tool. UTILITY MODEL CONTENT

[0005] The utility model aims at solving the shortcomings in the prior art and proposes a low loss cable laying tool.

[0006] In order to achieve the above object, the utility model adopts the following technical scheme:

[0007] A low loss cable laying tool, including the laying box for low loss cable laying, the battery compartment is installed on the left side of the laying box, the charging port is opened in the lower side of the battery compartment, the second installation chamber is opened in the inner side of the laying box, and the laying assembly is installed in the inner side of the second installation chamber.

[0008] Further, the handle is fixedly installed on the front side of the laying box.

[0009] Further, the semi-arc groove is opened in the inner side of the laying box, the discharge port is opened in the inner side of the semi-arc groove, the first storage groove and the second storage groove are sequentially opened in the inner side of the laying box, the buckle is placed in the inner side of the first storage groove, and the first storage groove is communicated with the discharge port.

[0010] Further, the screw is placed in the inner side of the second storage groove, the cross groove is opened in the rear end of the screw, and the cross groove is matched with the cross head.

[0011] Further, the first storage tank upper side port buckles a first buckle cover, and the second storage tank upper side port buckles a second buckle cover.

[0012] Further, the battery compartment inner side is provided with a storage battery.

[0013] Further, the second storage tank side edge is provided with a first mounting chamber, and an electric push rod is fixedly installed in the first mounting chamber, a push block is fixedly installed on the electric push rod output end, and the first mounting chamber is in communication with the first storage tank and the second storage tank bottom in sequence.

[0014] Compared with the related art, the low-loss cable laying tool has the following advantages

[0015] Beneficial effects:

[0016] In the utility model, the low-loss cable laying tool is provided with the laying assembly, the built-in motor is started to drive the rectangular sleeve to rotate, the rectangular sleeve can drive the slide column and the cross-shaped cutter head on the slide column to rotate, the cross-shaped cutter head can abut and enter the cross-shaped groove in the screw end under the resilience of the compression spring, the screw can be driven to rotate, the resilience of the compression spring exerts lateral pressure on the screw during rotation, the screw can be gradually rotated and penetrated into the laying main structure, the buckle is screwed at the corresponding point of laying, the positioning work of the low-loss cable is completed, the whole process is driven by electricity, manual installation work is not needed, the working efficiency is higher, the lateral buckle fixing mode is adopted, and the whole work will not damage the cable. ACCURACY OF DRAWINGS

[0017] Figure 1 The utility model provides a kind of low-loss cable laying tool's three-dimensional structure schematic Figure One ;

[0018] Figure 2 The utility model provides a kind of low-loss cable laying tool's three-dimensional structure schematic Figure Two ;

[0019] Figure 3 The utility model provides a kind of low-loss cable laying tool's three-dimensional structure schematic Figure One ;

[0020] Figure 4 The utility model provides a kind of low-loss cable laying tool's three-dimensional structure schematic Figure Two ;

[0021] Figure 5 The utility model provides a kind of low-loss cable laying tool's three-dimensional structure schematic Figure Three;

[0022] Figure 6 The figure is a schematic diagram of the three-dimensional disassembled structure of the laying assembly.

[0023] In the figure: 1, laying box; 2, handle; 3, battery compartment; 4, charging port; 5, half-arc groove; 6, first mounting chamber; 7, first buckle cover; 8, second buckle cover; 9, discharge port; 10, buckle; 11, second mounting chamber; 12, laying assembly; 121, built-in motor; 122, rectangular sleeve; 123, sliding column; 124, compression spring; 125, electromagnet block; 126, cross-shaped tool bit; 13, first storage groove; 14, second storage groove; 15, screw; 16, electric push rod; 17, push block. DETAILED DESCRIPTION

[0024] The utility model will be further described below in combination with the drawings and embodiments.

[0025] Reference Figures 1-6 A low-loss cable laying tool: including a laying box 1 for low-loss cable laying, the laying box 1 left side is equipped with battery compartment 3, and the battery compartment 3 lower side is provided with charging port 4, and the laying box 1 inner side is provided with second mounting chamber 11, and the second mounting chamber 11 inner side is equipped with laying assembly 12;Laying assembly 12 includes built-in motor 121, and rectangular sleeve 122 is fixedly installed on the output end of built-in motor 121, and sliding column 123 is slidably installed in the inner side of rectangular sleeve 122, and compression spring 124 is fixedly installed at the bottom of sliding column 123, and electromagnet block 125 is fixedly installed at the bottom of compression spring 124, and electromagnet block 125 is fixedly installed in the inner side of rectangular sleeve 122 and is provided with an insulating layer on the outer side of electromagnet block 125, and cross-shaped tool bit 126 is fixedly installed at the end of sliding column 123, and battery compartment 3 inner side is equipped with battery.

[0026] Through the above-mentioned mode of setting, the battery provides power consumption for the device, the charging port 4 is used to charge, the built-in motor 121 can be started to drive the rectangular sleeve 122 to rotate, the rectangular sleeve 122 can drive the sliding column 123 and the cross-shaped tool bit 126 at the end of the sliding column 123 to rotate, under the resilience of the compression spring 124, the cross-shaped tool bit 126 can be abutted into the cross-shaped groove inside the end of the screw 15, and then the screw 15 can be driven to rotate, and the resilience of the compression spring 124 exerts lateral pressure on the screw 15 when rotating, and then the screw 15 can gradually rotate and penetrate into the laying main structure, and then the buckle is screwed at the corresponding point of the laying, and the positioning work of the low-loss cable is completed, the built-in motor 121 is stopped driving subsequently, then the electromagnet block 125 is electrified, and the resilience of the compression spring 124 is overcome by using magnetic attraction force to retract the sliding column 123 into the inner side of the rectangular sleeve 122, and the driving and screwing work of the next screw is waited.

[0027] In the mode, the inside of the laying box 1 is provided with a semicircular groove 5, the inside of the semicircular groove 5 is provided with a discharge port 9, the inside of the laying box 1 is sequentially provided with a first storage groove 13 and a second storage groove 14, the first storage groove 13 is placed with a buckle 10, the first storage groove 13 is communicated with the discharge port 9, the second storage groove 14 is placed with a screw 15, the rear end of the screw 15 is provided with a cross groove, and the cross groove is matched with a cross cutter head 126.

[0028] Through the above-mentioned mode, the buckle 10 placed in the first storage groove 13 will automatically slide to the discharge port 9 on the lower side under the action of gravity, and when the buckle 10 at the discharge port 9 is completed with the screw connection, the laying box 1 is removed, and the next buckle 10 is slid to the discharge port 9.

[0029] In the mode, the front side of the laying box 1 is fixedly provided with a handle 2.

[0030] Through the above-mentioned mode, the handle 2 is convenient for manually holding the laying box 1.

[0031] In the mode, the upper side of the first storage groove 13 is buckled with a first buckle cover 7, and the upper side of the second storage groove 14 is buckled with a second buckle cover 8.

[0032] Through the above-mentioned mode, the first buckle cover 7 and the second buckle cover 8 are convenient for opening the buckle cover and adding materials to the first storage groove 13 and the second storage groove 14 respectively.

[0033] In the mode, the side of the second storage groove 14 is provided with a first installation chamber 6, the inside of the first installation chamber 6 is fixedly provided with an electric push rod 16, the output end of the electric push rod 16 is fixedly provided with a push block 17, and the first installation chamber 6 is sequentially communicated with the bottom of the first storage groove 13 and the second storage groove 14.

[0034] Through the above-mentioned mode, when the electric push rod 16 is started, the push block 17 can drive the screw 15 to move to the rear side of the buckle 10, so that the rear end of the screw 15 is matched with the cross cutter head 126, and the screw 15 placed in the second storage groove 14 is slid to the bottom of the second storage groove 14 under the action of gravity.

[0035] The working principle of the low-loss cable laying tool is as follows:

[0036] In use, the first cover 7 and the second cover 8 are opened, the buckles 10 and the screws 15 are added to the first storage tank 13 and the second storage tank 14 respectively, then the covers are closed, the handle 2 of the laying box 1 is held, the device is moved to a position where the cable needs to be laid, the semi-arc groove 5 is pressed against the outer side of the cable, at this time, the buckle 10 in the first storage tank 13 slides to the discharge port 9 under the action of gravity, the built-in motor 121 is started, the output end of the built-in motor 121 drives the rectangular sleeve 122 to rotate, and then the slide column 123 and the cross cutter head 126 are synchronously rotated, under the rebound force of the compression spring 124, the cross cutter head 126 abuts to the cross groove at the end of the screw 15 at the back of the buckle 10 which is pushed to the back of the buckle 10 by the electric push rod 16 at the bottom of the second storage tank 14, with the rotation of the cross cutter head 126, the screw 15 is driven to rotate, the rebound force of the compression spring 124 applies lateral pressure to the screw 15, so that the screw 15 is gradually rotated and pierced into the laying main body structure, the buckle 10 is screwed at the corresponding point, the fixing of one positioning point of the low-loss cable is completed, after the fixing of one positioning point is completed, the built-in motor 121 is stopped, the electromagnet block 125 is powered, the magnetic attraction force generated by the electromagnet block 125 overcomes the rebound force of the compression spring 124, the slide column 123 is retracted into the inside of the rectangular sleeve 122, the laying box 1 is moved to the next positioning point, in the moving process, the new buckle 10 in the first storage tank 13 automatically slides to the discharge port 9, at the same time, the screw 15 in the second storage tank 14 slides to the bottom of the second storage tank 14 under the action of gravity, the electric push rod 16 is started, the push block 17 moves the new screw 15 to the back of the buckle 10 and aligns with the cross cutter head 126, the above positioning operation is repeated until the laying and positioning of the cable are completed.

[0037] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process transformation according to the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection range of the present application.

Claims

1. A low-loss cable laying tool, characterized in that, The cable includes a laying box (1) for laying low-loss cables. A battery compartment (3) is installed on the left side of the laying box (1). A charging port (4) is opened on the lower side of the battery compartment (3). A second installation chamber (11) is opened inside the laying box (1). A laying assembly (12) is installed inside the second installation chamber (11). The laying assembly (12) includes a built-in motor (121), a rectangular sleeve (122) is fixedly installed on the output end of the built-in motor (121), a slide column (123) is slidably installed on the inner side of the rectangular sleeve (122), a compression spring (124) is fixedly installed at the bottom of the slide column (123), an electromagnet block (125) is fixedly installed at the bottom of the compression spring (124), the electromagnet block (125) is fixedly installed on the inner side of the rectangular sleeve (122) and an insulating layer is sleeved on the outer side of the electromagnet block (125), and a cross blade (126) is fixedly installed at the end of the slide column (123).

2. The low-loss cable laying tool according to claim 1, characterized in that, The laying box (1) has a handle (2) fixedly installed on the front side.

3. The low-loss cable laying tool according to claim 1, characterized in that, The laying box (1) has a semi-circular groove (5) on its inner side, and a discharge port (9) is provided on the inner side of the semi-circular groove (5). The laying box (1) has a first storage trough (13) and a second storage trough (14) in sequence on its inner side. A buckle (10) is placed on the inner side of the first storage trough (13), and the first storage trough (13) is connected to the discharge port (9).

4. The low-loss cable laying tool according to claim 3, characterized in that, A screw (15) is placed inside the second storage tank (14). The screw (15) has a cross groove at its rear end, which is adapted to the cross cutter head (126).

5. A low-loss cable laying tool according to claim 3, characterized in that, The first storage tank (13) has a first cover (7) fastened to its upper port, and the second storage tank (14) has a second cover (8) fastened to its upper port.

6. The low-loss cable laying tool according to claim 1, characterized in that, A storage battery is installed inside the battery compartment (3).

7. A low-loss cable laying tool according to claim 3, characterized in that, The second storage tank (14) has a first installation chamber (6) on its side. An electric push rod (16) is fixedly installed inside the first installation chamber (6). A push block (17) is fixedly installed on the output end of the electric push rod (16). The first installation chamber (6) is connected to the bottom of the first storage tank (13) and the second storage tank (14) in sequence.